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Construction and biofunctional evaluation of electrospun vascular graft loaded with selenocystamine for in situ catalytic generation of nitric oxide

机译:硒代半胱胺电纺血管移植物原位催化生成一氧化氮的构建及生物功能评价

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Construction and biofunctional evaluation of a novel vascular graft with in situ catalytic generation of nitric oxide were described in this paper. Poly alpha-lysine and poly (gamma-glutamic acid) were deposited alternately onto the surface of an electrospun poly epsilon-caprolactone matrix via electrostatic layer-by-layer self-assembly, and then selenocystamine was loaded as a catalyst Measurement of in vitro catalytic generation of nitric oxide demonstrated that this catalyst-loaded material could considerably accelerate the release of nitric oxide from S-nitrosoglutathione. A fibroblast proliferation assay showed that the material possessed satisfactory cellular compatibility. The catalyst-loaded material could inhibit the spread of smooth muscle cells in the presence of nitric oxide donors. In arteriovenous-shunt experiment, the catalyst-loaded graft exhibited good anti-thrombotic property where it could prevent acute thrombosis by decreasing the adhesion and activation of platelets and other blood cells. These data suggest a new method of building vascular grafts with improved hemocompatibility and biological functions. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文描述了一种新型的一氧化氮原位催化生成血管移植物的构建和生物功能评价。聚α-赖氨酸和聚(γ-谷氨酸)通过静电逐层自组装交替沉积在电纺聚ε-己内酯基质表面上,然后将硒代半胱胺作为催化剂负载一氧化氮的产生表明,这种负载催化剂的材料可以大大加速S-亚硝基谷胱甘肽中一氧化氮的释放。成纤维细胞增殖测定表明该材料具有令人满意的细胞相容性。在存在一氧化氮供体的情况下,负载催化剂的材料可以抑制平滑肌细胞的扩散。在动静脉分流实验中,负载催化剂的移植物表现出良好的抗血栓形成特性,可通过减少血小板和其他血细胞的粘附和活化来防止急性血栓形成。这些数据表明了一种具有改善的血液相容性和生物学功能的构建血管移植物的新方法。 (C)2014 Elsevier B.V.保留所有权利。

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